Abstract:
A method of manufacturing a magnetic recording medium comprises steps of providing a non-magnetic substrate having at least one surface; forming a layer of a sol-gel on the surface, partially drying the sol-gel layer at room temperature to remove a portion of the solvent therein to form a partially dried sol-gel layer of hardness less than that of the substrate; mechanically texturing the surface of the partially dried sol-gel layer; and depositing a layer stack including at least one magnetic layer thereover. Embodiments of the invention include embossing a servo pattern in the as-deposited sol-gel layer prior to partial drying and mechanically texturing, followed by sintering at an elevated temperature to form a substantially fully dried layer having a density and hardness similar to that of glass, and formation of a thin film magnetic media layer stack thereon.
Abstract:
An optically decorative product including a layer of transparent polymeric material having opposed surfaces, one of the opposed surfaces provided with a plurality of ridges and grooves, a layer of substantially transparent color effect producing material mounted to one of the opposed surfaces, the layer of transparent polymeric material and the layer of substantially transparent color effect producing material combining to produce in the presence of light a color effect image such that the material has an appearance other than that of a surface of the material and the image being other than coincident with the surfaces, and a layer of product mounting adhesive applied to the opposed surface of the material to which the layer of substantially transparent color effect producing material is not mounted.
Abstract:
A structured surface articles such as molds or sheeting are formed on a compound substrate including a machined substrate and a replicated substrate. In one embodiment, the structured surface is a cube corner element on a compound substrate. In another embodiment, the structured surface is a geometric structure that has a plurality of faces, where one face is located on the machined substrate and another face is located on the replicated substrate. In yet another embodiment, at least some of the faces include a compound face with a portion formed on the machined substrate and a portion formed on the replicated substrate. The method of making a structured surface article including a geometric structure having a plurality of faces includes forming an array of geometric structures in a first surface of a machined substrate; passivating selected locations of the first surface of the machined substrate; forming a replicated substrate of the machined substrate to form a compound substrate; forming an array of second geometric structures on a second surface opposite the first surface on the machined substrate; and removing selected portions from the second surface of the machined substrate.
Abstract:
A sound absorbing article, which may be formed to a thickness of between 1 and 2 mm and have an NRC value between 0.8 and 0.85, is provided. Additionally the sound absorbing article may be formed of materials, which are flame retardant and environmentally friendly. The sound absorbing article includes (i) a material which is pervious to air, and which is characterized by proximal and distal surfaces with respect to a sound source, an internal structure, and a specific weight; (ii) a coating which adheres to the surfaces and internal structure, thus increasing the specific weight by a predetermined factor; and preferably (iii) a membrane, attached to the material at selected bonding points, forming interconnected channels between the material and the membrane, and allowing air to pass through them.
Abstract:
An apparatus and method for stiffening a panel provides a composite waffle stiffener and the method for constructing the stiffener. A plurality of fabric plies pre-cut to a selected pattern are laid on a tool having a waffle configuration, the plies overlapping each other to maintain continuity of the structure. The resulting waffle stiffener is then bonded to a panel requiring stiffening. The stiffener is flexible and may be bonded to curved panels. Holes in the stiffener allow access to the volume between the stiffener and the panel for minimizing volume loss within, for example, a wing structure containing fuel and for ventilating air or moisture trapped in the volume.
Abstract:
Here is disclosed a composite sheet comprising substantially non-stretchable nonwoven fabric sheets and a plurality of elastic members extending in a transverse direction and spaced one from another in a longitudinal direction by a given spacing wherein the elastic members are secured in a stretched state to the nonwoven fabric sheets. The composite sheet has a plurality of gathers formed by slightly undulated surface of the nonwoven fabric sheets and the elastic members and these gathers are substantially continuous in the longitudinal direction and arranged at substantially regular intervals in the transverse direction.
Abstract:
The present invention is: a metallic foil to be used for a metallic honeycomb for purifying exhaust gas of an automobile or the like, said metallic foil not causing cracks or ruptures to develop in the foil even when it undergoes corrugation work with more sharply bending corner portions of a trapezoidal shape; and a catalyst support for purifying exhaust gas of an automobile or the like, characterized in that said metallic foil, being rough surface finished and having good corrugation workability, is made of heat-resistant stainless steel and has surface roughness more than 2.0 and not more than 5.0 nullm in Rmax and, said metallic catalyst support for purifying exhaust gas has a structure comprising a honeycomb inserted in a jacket, wherein the honeycomb is composed of rough surface finished metallic foil having surface roughness more than 2.0 and not more than 5.0 nullm in Rmax and the jacket is made of heat-resistant stainless steel.
Abstract:
A metallic catalyst carrier 2 has good productivity and improves the exhaust performance by causing the flow of exhaust gas therein to become turbulent, without causing tearing, cutting, and warping of its honeycomb-structure The metallic catalyst carrier 2 has a base metal sheet 5 and a corrugated metal sheet 6 laminated together with a plurality of cell passages 7 formed between the base sheet 5 and the corrugated sheet 6 such that exhaust gases passes through the cell passages 7. The base sheet 5 or the corrugated sheet 6 is equipped with a plurality of hole lines 5a or 6a arranged along hole lines 8 or 9 in a direction perpendicular to the cell passage 7. Between adjacent hole lines 8 or 9, the holes 5a or 6a that form the hole lines 8 or 9 are separated by a prescribed distance in a direction perpendicular to the longitudinal directions of the cell passages 7.
Abstract:
A liquid absorbing sheet for absorbing liquids exuding from a food product disposed in a container of the type having a bottom wall provided with a furrow extending along a side wall of the container. The absorbing sheet comprises a first absorbing zone centrally located on the sheet and comprising a permeable top layer made of a liquid permeable material, an impermeable bottom layer made of a liquid impermeable layer and an absorbing mat between the top layer and the bottom layer, made of a liquid absorbing material. The sheet further comprises a second absorbing zone having an elongated and narrow configuration adapted to fit over the furrow, and comprising an impermeable top layer made of a liquid impermeable material, a permeable bottom layer made of a liquid permeable material and an absorbing mat between the top and the bottom layer, made of a liquid absorbing material.